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一种用于多孔材料实时流量测量的电化学传感器系统。

An electrochemical-sensor system for real-time flow measurements in porous materials.

机构信息

Department of Biomedical Engineering, School of Life Sciences, Ulsan National, Institute of Science and Technology (UNIST), 100 Banyeon-ri, Eonyang-eup, Ulju-gun, Ulsan 689-798, Republic of Korea; Department of Biomedical Engineering, College of Engineering, University of Michigan, 2800 Plymouth Road, Ann Arbor, MI 2350, USA.

Department of Biomedical Engineering, School of Life Sciences, Ulsan National, Institute of Science and Technology (UNIST), 100 Banyeon-ri, Eonyang-eup, Ulju-gun, Ulsan 689-798, Republic of Korea.

出版信息

Biosens Bioelectron. 2015 Aug 15;70:115-21. doi: 10.1016/j.bios.2015.03.002. Epub 2015 Mar 4.

Abstract

Flow monitoring in porous materials is critical for the engineering of paper-based microfluidic bioassays. Here, we present an electrochemical-sensor system that monitors the liquid flow in porous materials without affecting the real flow in paper-strip samples. The developed microfluidic sensor records an amperometric signal created by the solution movement mediated by paper wicking. This approach allows the in situ monitoring of the different hydrodynamic conditions of a specific paper geometry or composition. In addition, the method proposed in this work was employed to characterise the fluid flow of different nitrocellulose paper strips after oxygen-plasma treatment or dextran coating. The dextran fluid-flow modifiers were further used on the paper strip-based assays as means of signal enhancement. The proposed electrochemical-sensing method offers a valuable alternative to existing optical-based monitoring techniques for flow measurement in paper-based microfluidic systems.

摘要

在多孔材料中进行流量监测对于基于纸张的微流控生物分析的工程设计至关重要。在这里,我们提出了一种电化学传感器系统,该系统可以监测多孔材料中的液体流动,而不会影响纸张样本中的实际流动。所开发的微流体传感器记录了由纸吸墨介导的溶液移动产生的电流计信号。这种方法允许原位监测特定纸张几何形状或组成的不同流体动力学条件。此外,本工作中提出的方法用于表征经氧等离子体处理或葡聚糖涂层后的不同硝化纤维素纸条的流体流动。葡聚糖流体流动改性剂进一步用作基于纸张的分析物上的信号增强手段。所提出的电化学传感方法为基于纸张的微流控系统中的流量测量提供了一种有价值的替代现有基于光学的监测技术。

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